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Metallo-dielectric electromagnetic bandgap structures for suppression and isolation of the parallel-plate noise in high-speed circuits

机译:金属电介质电磁带隙结构,用于抑制和隔离高速电路中的平行板噪声

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摘要

A novel approach for the suppression of the parallel-plate waveguide (PPW) noise in high-speed printed circuit boards is presented. In this approach, one of the two conductors forming the PPW is replaced by an electromagnetic bandgap (EBG) surface. The main advantage of the proposed approach over the commonly practiced methods is the omnidirectional noise suppression it provides. For this purpose, two EBG structures are initially designed by utilizing an approximate circuit model. Subsequently, the corresponding band structures are characterized by analytical solutions using the transverse resonance method, as well as full-wave finite-element simulations. The designed EBG surfaces were fabricated and employed in a number of PPW test boards. The corresponding frequency-domain measurements exhibited bandgaps of approximately 2.21 and 3.35 GHz in the frequency range below 6 GHz. More importantly, suppression of the PPW noise by 53% was achieved based on time-domain reflectometry experiments, while maintaining the signal transmission quality within the required specifications for common signaling standards.
机译:提出了一种抑制高速印刷电路板中平行板波导(PPW)噪声的新颖方法。在这种方法中,形成PPW的两个导体之一被电磁带隙(EBG)表面代替。与常用方法相比,该方法的主要优点是它提供了全向噪声抑制。为此,首先利用近似电路模型设计了两个EBG结构。随后,通过使用横向共振方法的解析解以及全波有限元模拟来表征相应的能带结构。所设计的EBG表面已制成,并用于许多PPW测试板上。在低于6 GHz的频率范围内,相应的频域测量显示出约2.21和3.35 GHz的带隙。更重要的是,基于时域反射仪实验,将PPW噪声抑制了53%,同时将信号传输质量保持在通用信令标准所需的规格之内。

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